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Determination of Co-Q10 in plasma samples by dual-electrode amperometric detection and liquid chromatography

机译:双电极安培检测和液相色谱法测定血浆样品中的Co-Q10

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摘要

Co-Q_(10) is a lipid-soluble benzoquinone that is an important factor in free radical scavenging, mitochondrial membrane stability and ATP synthesis. Dietary Co-Q_(10) is a powerful antioxidant that has been useful in lessening the damage associated with ischemia-reperfusion injuries and aiding in the recovery of myocardial function after myocardial infarction. However, the role of dietary Co-Q_(10) in oxidative damage and repair is not well understood. Previous LC-EC methods have used packed carbon bed electrodes with high overpotentials that were sufficient to oxidize and reduce several biological compounds, thereby decreasing the selectivity that can be achieved with EC detection. Thin-layer cell dual electrode detection enables monitoring of reduced and oxidized forms of Co-Q_(10) simultaneously and selectively. The oxidation (+0.45 V vs. Ag/AgCl) and reduction (-0.4 V vs. Ag/AgCl) electrode potentials were optimized to oxidize and reduce the electroactive quinone moiety. The reduced form of Co-Q_(10) was prepared from the commercially available oxidized form using a Jones reductor. Confirmation of its formation was determined using the current ratios of the peak and half wave potentials from previously generated hydrodynamic voltammograms, using the oxidized form with electrodes in a series configuration. This analytical system was successfully applied to determine basal concentrations of oxidized (510 nM) and reduced (500 nM) Co-Q_(10) in human plasma. Peak identity of oxidized and reduced Co-Q_(10) was confirmed by two orthogonal methods: by the current ratios at +0.45 V and +0.25 V and -0.4 V and -0.2 V (vs. Ag/AgCl) as well as by retention time. Detection limits were determined to be 5 nM, with a linear range of three orders of magnitude.
机译:Co-Q_(10)是脂溶性苯醌,是自由基清除,线粒体膜稳定性和ATP合成的重要因素。膳食辅酶Q_(10)是一种有效的抗氧化剂,可用于减轻与缺血再灌注损伤相关的损害,并有助于心肌梗塞后心肌功能的恢复。然而,饮食中Co-Q_(10)在氧化损伤和修复中的作用尚不十分清楚。以前的LC-EC方法使用具有高过电势的填充式碳床电极,该电极足以氧化和还原几种生物化合物,从而降低了EC检测可实现的选择性。薄层电池双电极检测可以同时且选择性地监测Co-Q_(10)的还原形式和氧化形式。优化氧化(+0.45 V,相对于Ag / AgCl)和还原(-0.4 V,相对于Ag / AgCl)电极电位,以氧化和还原电活性醌部分。 Co-Q_(10)的还原形式是使用琼斯还原剂从可商购的氧化形式制备的。使用串联形式的电极氧化形式,使用先前生成的流体动力学伏安图的峰值和半波电势的电流比,确定其形成。此分析系统已成功应用于确定人血浆中氧化的(510 nM)和还原的(500 nM)Co-Q_(10)的基础浓度。氧化和还原的Co-Q_(10)的峰同一性通过两种正交方法确认:通过+0.45 V和+0.25 V和-0.4 V和-0.2 V的电流比(vs. Ag / AgCl)以及通过保留时间。检测限确定为5 nM,线性范围为三个数量级。

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